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Autophagy Is Essential for Neural Stem Cell Proliferation Promoted by Hypoxia

雷氏菌 mTORC1型 自噬 细胞生物学 生物 神经干细胞 PI3K/AKT/mTOR通路 细胞生长 缺氧(环境) 雷帕霉素的作用靶点 信号转导 干细胞 细胞凋亡 化学 生物化学 有机化学 氧气
作者
Jian Li,Sheng-Hui Gong,Yun‐Ling He,Yan Cao,Ying Chen,Guang-Hai Huang,Yufei Wang,Ming Zhao,Cheng Xiang,Yanzhao Zhou,Tong Zhao,Yong-Qi Zhao,Ming Fan,Haitao Wu,Ling-Ling Zhu,Liying Wu
出处
期刊:Stem Cells [Oxford University Press]
卷期号:41 (1): 77-92 被引量:6
标识
DOI:10.1093/stmcls/sxac076
摘要

Hypoxia as a microenvironment or niche stimulates proliferation of neural stem cells (NSCs). However, the underlying mechanisms remain elusive. Autophagy is a protective mechanism by which recycled cellular components and energy are rapidly supplied to the cell under stress. Whether autophagy mediates the proliferation of NSCs under hypoxia and how hypoxia induces autophagy remain unclear. Here, we report that hypoxia facilitates embryonic NSC proliferation through HIF-1/mTORC1 signaling pathway-mediated autophagy. Initially, we found that hypoxia greatly induced autophagy in NSCs, while inhibition of autophagy severely impeded the proliferation of NSCs in hypoxia conditions. Next, we demonstrated that the hypoxia core regulator HIF-1 was necessary and sufficient for autophagy induction in NSCs. Considering that mTORC1 is a key switch that suppresses autophagy, we subsequently analyzed the effect of HIF-1 on mTORC1 activity. Our results showed that the mTORC1 activity was negatively regulated by HIF-1. Finally, we provided evidence that HIF-1 regulated mTORC1 activity via its downstream target gene BNIP3. The increased expression of BNIP3 under hypoxia enhanced autophagy activity and proliferation of NSCs, which was mediated by repressing the activity of mTORC1. We further illustrated that BNIP3 can interact with Rheb, a canonical activator of mTORC1. Thus, we suppose that the interaction of BNIP3 with Rheb reduces the regulation of Rheb toward mTORC1 activity, which relieves the suppression of mTORC1 on autophagy, thereby promoting the rapid proliferation of NSCs. Altogether, this study identified a new HIF-1/BNIP3-Rheb/mTORC1 signaling axis, which regulates the NSC proliferation under hypoxia through induction of autophagy.

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